“Cupra”和“Fiesta”辣椒生长特性和产量模式的产量预测分析

K. Joung, 정 경희, Hyo Jin, J. An, H. Yoon, Sang Suk Oh, C. Lim, Y. Um, Heedae Kim, K. Hong, Seong Min Park, 진 효정, 안 재욱, 윤 혜숙, 오 상석, 임 채신, 엄 영철, 김 희대, 홍 광표, 박 성민
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引用次数: 2

摘要

本研究旨在通过分析辣椒的生长特征、产量规律和温室环境,对辣椒的产量进行预测。在庆南地区(海拔667米)的温室里,从2016年7月5日到2017年7月15日,种植了红辣椒“Cupra”和黄辣椒“Fiesta”。种植密度为3.66株/m,共吸引2茎。栽培期间,温室平均外辐射为14.36 MJ/m/d,室内平均温度控制在20.1C。种植42周后,‘Cupra’的生长速率为7.3 cm/周,‘Fiesta’的生长速率为6.9 cm/周。Cupra在第1.0节第一次坐果,Fiesta在第2.7节第一次坐果。“Fiesta”的第一次收获是在种植后11周,“Fiesta”是在种植后14周。与7月栽培结束前的每10a产量相比,“Fiesta”为19307公斤,比“Cupra”高出2.4%。‘Cupra’200 g以上的果重比为27.7%,比‘Fiesta’高7.7%。‘Cupra’坐果后平均所需收获天数为72.6天,‘Fiesta’为63.8天。从平均采收所需日数与累积辐射(坐果至采收)的关系来看,2月后辐射增加越多,采收所需日数增加越少。在产量方面,‘Cupra’的产量随累积辐射的增加而增加,而‘Fiesta’则表现出不规则的规律。两个品种坐果至收获的累积辐射与2月后所需收获日数呈负相关。但就产量而言,“Cupra”和“Fiesta”存在差异。附加关键词:辣椒,生长模式,果实重比,收获所需天数
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Analysis of Growth Characteristics and Yield Pattern of ‘Cupra’ and ‘Fiesta’ Paprika for Yield Prediction
This study was aimed at predicting the yield of paprika (Capsicum annuum L.) through analyzing the growth characteristics, yield pattern and greenhouse environment. In the greenhouse of the Gyeongnam area (667 m above sea level), the red paprika ‘Cupra’ and the yellow paprika ‘Fiesta’ were grown from July 5, 2016 to July 15, 2017. The planting density was 3.66 plants/m and attracted 2 stems. During the cultivation period, the average external radiation of the glasshouse was 14.36 MJ/m/day and the internal average temperature was controlled as 20.1C. After 42 weeks of planting, the growth rate of ‘Cupra’ was 7.3 cm/week and that of ‘Fiesta’ was 6.9 cm/week. The first fruit setting of ‘Cupra’ appeared at 1.0th node and ‘Fiesta’ at 2.7th node. The first harvest of 'Fiesta' was 11 weeks after planting and 'Fiesta' was 14 weeks. Comparing the yield per 10 a until the end of the cultivation in July, ‘Fiesta’ was 19,307 kg, which was 2.4% higher than that of ‘Cupra’. And the fruit weight ratio of over 200 g of ‘Cupra’ was 27.7% which was 7.7% higher than that of ‘Fiesta’. The average required days to harvest after fruit setting of ‘Cupra’ was 72.6 days and ‘Fiesta’ was 63.8 days. According to the relationship between the average required days to harvest and the cumulative radiation (during from fruit setting to harvest), the more radiation increases the less required days to harvest increases after February. In terms of yield, ‘Cupra’ increased in yield as the cumulative radiation increased, while ‘Fiesta’ showed an irregular pattern. Cumulative radiation from fruit setting to harvest was negatively correlated with required days to harvest after February in both cultivars. But in relation to yield, there were difference between ‘Cupra’ and ‘Fiesta’. Additional key words : Capsicum annuum L., Growth pattern, Ratio of fruit weight, Required days to harvest
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